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Capillary-inertial colloidal catapults upon drop coalescence

机译:液滴合并时的毛细管-惯性胶体弹射器

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摘要

Surface energy released upon drop coalescence is known to power the self-propelled jumping of liquid droplets on superhydrophobic solid surfaces, and the jumping droplets can additionally carry colloidal payloads toward self-cleaning. Here, we show that drop coalescence on a spherical particle leads to self-propelled launching of the particle from virtually any solid surface. The main prerequisite is an intermediate wettability of the particle, such that the momentum from the capillary-inertial drop coalescence process can be transferred to the particle. By momentum conservation, the launching velocity of the particle-drop complex is proportional to the capillary-inertial velocity based on the drop radius and to the fraction of the liquid mass in the total mass. The capillary-inertial catapult is not only an alternative mechanism for removing colloidal contaminants, but also a useful model system for studying ballistospore launching.
机译:已知在液滴聚结时释放的表面能可推动液滴在超疏水性固体表面上的自推动跳跃,并且跳跃的液滴还可以携带胶体有效载荷进行自清洁。在这里,我们显示了在球形粒子上的液滴聚结会导致粒子从几乎任何固体表面自动发射。主要前提条件是颗粒具有中等润湿性,以使来自毛细管惯性液滴聚结过程的动量可以转移到颗粒上。通过动量守恒,液滴复合物的发射速度与基于液滴半径的毛细管惯性速度成比例,并且与液体质量在总质量中的比例成正比。毛细管惯性弹射器不仅是去除胶体污染物的另一种机制,而且还是研究弹头孢子发射的有用模型系统。

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